Abstract:
An electronic device including a housing including a first plate facing a first direction, a second plate facing opposite to the first direction, and a side surface member surrounding a portion of a space between the first and second plates; a display panel disposed in a second direction of the first plate, and visually disposed through at least a portion of the first plate; a speaker disposed on one surface of the display panel facing in the second direction; a bracket including a first surface facing in the first direction and a second surface facing in the second direction, and disposed to support the display panel on the first surface; and a bonding configured to attach the display panel and the bracket. The bonding layer includes a gap formed by deleting a portion of the bonding layer to receive the speaker, and formed between the display panel and the bracket.
Abstract:
According to a general aspect, a method may include receiving a computing task, wherein the computing task includes a plurality of operations. The method may include allocating the computing task to a data node, wherein the data node includes at least one host processor and an intelligent storage medium, wherein the intelligent storage medium comprises at least one controller processor, and a non-volatile memory, wherein each data node includes at least three processors between the at least one host processor and the at least one controller processor. The method may include dividing the computing task into at least a first chain of operations and a second chain of operations. The method may include assigning the first chain of operations to the intelligent storage medium of the data node. The method may further include assigning the second chain of operations to the central processor of the data node.
Abstract:
An electronic device is provided. The electronic device includes a communication circuit, memory storing one or more computer programs, and one or more processors communicatively coupled to the communication circuit and the memory, wherein the one or more computer programs include computer-executable instructions that, when executed by the one or more processors individually or collectively, cause the electronic to receive, from an external electronic device, information indicating detection of user's gaze on a specified virtual object displayed on a display of the external electronic device wearable on at least part of a user's body through the communication circuit, receive information from analysis of the user's gaze, receive, from the external electronic device, first information from analysis of the user's face, second information from analysis of a user's gesture, or third information from analysis of whether the user started utterance, corresponding to the point in time at which the user's gaze has been detected, determine a user's intention to utter a voice command based on whether at least one of the first information, the second information, or the third information, and the information from analysis of the user's gaze satisfy a specified condition, execute a voice recognition application stored in the memory upon determining that there is the intention to utter and control the voice recognition application to be in a state of being capable of receiving a voice command of the user.
Abstract:
A method for providing information for improving sleep quality, and an electronic device for supporting same are disclosed. The electronic device may comprise a display, at least one processor, and a memory. The at least one processor may: check a user's sleep time information, obtain activity information and sleep evaluation information corresponding to the sleep time information; analyze a pattern of the activity information on the basis of the sleep evaluation information; generate sleep guide information relating to the user on the basis of a result of the analysis; and output the generated sleep guide information on the display. Various other embodiments identified by the present document are possible.
Abstract:
An electronic device including a shield structure is provided. The electronic device includes a first device including a first magnetic substance, a second device including a second magnetic substance, and a shield structure configured to shield at least part of a magnetic force generated between the first magnetic substance and the second magnetic substance, wherein the shield structure includes a shield member disposed between the first device and the second device and including a property of a magnetic substance, and a connecting member physically connected to at least part of the shield member and including a property of a nonmagnetic substance, wherein at least part of the connecting member is physically connected to a circuit board.
Abstract:
An electronic device may include: a housing including a front plate oriented in a first direction, a rear plate oriented in a second direction opposite the first direction, and a side member enclosing at least a part of a space between the front plate and the rear plate. The electronic device further including a display disposed to be visible through the front plate; a printed circuit board disposed between the display and the rear plate; a support structure having a first face oriented in the first direction and supporting the display and a second face oriented in the second direction and supporting the printed circuit board; a conductive member disposed between the support structure and the rear plate; and a sealing structure disposed between the conductive member and the rear plate, the sealing structure extending along a periphery of the conductive member and formed in a closed curve shape.
Abstract:
An electronic device including a shield structure is provided. The electronic device includes a first device including a first magnetic substance, a second device including a second magnetic substance, and a shield structure configured to shield at least part of a magnetic force generated between the first magnetic substance and the second magnetic substance, wherein the shield structure includes a shield member disposed between the first device and the second device and including a property of a magnetic substance, and a connecting member physically connected to at least part of the shield member and including a property of a nonmagnetic substance, wherein at least part of the connecting member is physically connected to a circuit board.
Abstract:
According to one general aspect, a system may include a plurality of data nodes. Each data node may include either or both of a first storage medium and a second storage medium that is slower than the first storage medium. Each data node may be configured to store a piece data in either the first storage medium or the second storage medium. The system may be configured to store a plurality of copies of an active piece of data within two or more data nodes. A fast copy of the active piece of data may be stored by a first storage medium of a first data node. One or more slow copies of the active piece of data may be stored by respective second storage mediums of one or more respective other data nodes.
Abstract:
According to one general aspect, a system may include a plurality of data nodes. Each data node may include either or both of a first storage medium and a second storage medium that is slower than the first storage medium. Each data node may be configured to store a piece data in either the first storage medium or the second storage medium. The system may be configured to store a plurality of copies of an active piece of data within two or more data nodes. A fast copy of the active piece of data may be stored by a first storage medium of a first data node. One or more slow copies of the active piece of data may be stored by respective second storage mediums of one or more respective other data nodes.
Abstract:
According to one general aspect, a system may include a plurality of data nodes. Each data node may include either or both of a first storage medium and a second storage medium that is slower than the first storage medium. Each data node may be configured to store a piece data in either the first storage medium or the second storage medium. The system may be configured to store a plurality of copies of an active piece of data within two or more data nodes. A fast copy of the active piece of data may be stored by a first storage medium of a first data node. One or more slow copies of the active piece of data may be stored by respective second storage mediums of one or more respective other data nodes.